de Villers-Sidani Étienne, Voss Patrice, Bastien Natacha, Cisneros-Franco J Miguel, Hussein Shamiza, Mayo Nancy E, Koch Nils A, Drouin-Picaro Alexandre, Blanchette François, Guitton Daniel, Giacomini Paul S
Innodem Neurosciences, Montreal, QC, Canada.
Montreal Neurological Institute, McGill University, Montreal, QC, Canada.
Front Neurol. 2023 Sep 6;14:1243594. doi: 10.3389/fneur.2023.1243594. eCollection 2023.
A growing body of evidence supports the link between eye movement anomalies and brain health. Indeed, the oculomotor system is composed of a diverse network of cortical and subcortical structures and circuits that are susceptible to a variety of degenerative processes. Here we show preliminary findings from the baseline measurements of an ongoing longitudinal cohort study in MS participants, designed to determine if disease and cognitive status can be estimated and tracked with high accuracy based on eye movement parameters alone. Using a novel gaze-tracking technology that can reliably and accurately track eye movements with good precision without the need for infrared cameras, using only an iPad Pro embedded camera, we show in this cross-sectional study that several eye movement parameters significantly correlated with clinical outcome measures of interest. Eye movement parameters were extracted from fixation, pro-saccade, anti-saccade, and smooth pursuit visual tasks, whereas the clinical outcome measures were the scores of several disease assessment tools and standard cognitive tests such as the Expanded Disability Status Scale (EDSS), Brief International Cognitive Assessment for MS (BICAMS), the Multiple Sclerosis Functional Composite (MSFC) and the Symbol Digit Modalities Test (SDMT). Furthermore, partial least squares regression analyses show that a small set of oculomotor parameters can explain up to 84% of the variance of the clinical outcome measures. Taken together, these findings not only replicate previously known associations between eye movement parameters and clinical scores, this time using a novel mobile-based technology, but also the notion that interrogating the oculomotor system with a novel eye-tracking technology can inform us of disease severity, as well as the cognitive status of MS participants.
越来越多的证据支持眼球运动异常与大脑健康之间的联系。事实上,动眼神经系统由各种皮质和皮质下结构及回路组成的多样化网络构成,这些结构和回路易受多种退行性病变的影响。在此,我们展示了一项正在进行的针对多发性硬化症(MS)参与者的纵向队列研究基线测量的初步结果,该研究旨在确定是否仅基于眼球运动参数就能高精度地估计和追踪疾病及认知状态。在这项横断面研究中,我们使用一种新颖的注视追踪技术,该技术仅使用iPad Pro嵌入式摄像头就能可靠、准确且高精度地追踪眼球运动,无需红外摄像头。结果表明,几个眼球运动参数与感兴趣的临床结局指标显著相关。眼球运动参数是从注视、顺向扫视、逆向扫视和平滑跟踪视觉任务中提取的,而临床结局指标则是几种疾病评估工具和标准认知测试的得分,如扩展残疾状态量表(EDSS)、MS简易国际认知评估(BICAMS)、多发性硬化症功能综合评分(MSFC)和符号数字模态测试(SDMT)。此外,偏最小二乘回归分析表明,一小部分动眼参数能够解释高达84%的临床结局指标方差。综上所述,这些发现不仅重现了此前已知的眼球运动参数与临床评分之间的关联(此次使用了一种新颖的基于移动设备的技术),还证实了这样一种观点,即使用新颖的眼动追踪技术研究动眼神经系统能够让我们了解MS参与者的疾病严重程度以及认知状态。